• Title of article

    In silico study of Aquaporin V: Effects and affinity of the central pore-occluding lipid Original Research Article

  • Author/Authors

    Y.B. Zhang، نويسنده , , L.Y. Chen، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    7
  • From page
    24
  • To page
    30
  • Abstract
    Because of its roles in human physiology, Aquaporin V (AQP5), a major intrinsic protein, has been a subject of many in vitro studies. In particular, a 2008 experiment produced its crystal structure at 2.0 Å resolution, which is in a tetrameric conformation consisting of four protomers. Each protomer forms an amphipathic pore that is fit for water permeation. The tetramer has a pore along its quasi-symmetry axis formed by quadruplets of hydrophobic residues (every protomer contributes equally to the quadruplets). A lipid, phosphatidylserine (PS6), is bound to AQP5 in the central pore, totally occluding it. A 2009 experiment showed that AQP5 facilitates not only permeation of water but also permeation of hydrophobic gas molecules across the cell membrane. In this article, we present an in silico study of AQP5 to elucidate the effects of PS6ʹs binding to and dissociating from AQP5ʹs central pore. Computing the lipidʹs chemical-potential along its dissociation path, we find that PS6 inhibits the function of the central pore with an IC50 in the micromolar range. Examining the central pore and the interstices between two adjacent protomers, we propose that nonpolar gas molecules (O2) permeate through AQP5ʹs hydrophobic central pore when un-occluded.
  • Keywords
    Aquaporin , Free energy , Permeation , membrane protein , Lipid–protein interaction
  • Journal title
    Biophysical Chemistry
  • Serial Year
    2013
  • Journal title
    Biophysical Chemistry
  • Record number

    1120598